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Semi-active control of the benchmark highway bridge based on seismic early warning systems

机译:基于地震预警系统的基准公路桥梁半主动控制

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摘要

Possible interactions between seismic early warning systems and structural control are herein investigated. A SEWS can provide the knowledge of some parameters, ahead of time, of the seismic event that is going to occur in a certain site. Current research activities on SEWS include the estimate of the anticipated peak ground acceleration (PGA) and the acceleration response spectrum (S(a)) of an incoming earthquake. This paper proposes the exploitation of this information in the framework of semi-active (SA) control strategies, by using magnetorheological dampers. The latter are time-varying properties devices able to achieve a wide range of physical behaviours using low-power electrical currents. The main idea of this work consists in changing the MR damper behaviour according to the forecasted intensity of an incoming earthquake provided by the SEWS, in order to obtain the optimal seismic response of the hosting structure. This is investigated assuming a case-study problem. It consists in the 91/5 highway bridge located in Orange County of southern California and proposed in literature as a benchmark structure for applications in the field of structural control. The effectiveness of the proposed control strategy is assessed and compared to more consolidated control techniques.
机译:本文研究了地震预警系统与结构控制之间可能的相互作用。 SEWS可以提前提供将要在特定站点发生的地震事件的一些参数的知识。 SEWS的当前研究活动包括对预期地震的峰值地面加速度(PGA)和加速度响应谱(S(a))的估计。本文提出使用磁流变阻尼器在半主动(SA)控制策略框架内利用此信息。后者是随时间变化的特性设备,能够使用低功率电流实现多种物理行为。这项工作的主要思想在于根据SEWS提供的地震预测强度来改变MR阻尼器的性能,从而获得主体结构的最佳地震响应。假设案例研究问题进行了调查。它由位于加利福尼亚南部奥兰治县的91/5公路桥梁组成,并在文献中被提议作为结构控制领域应用的基准结构。评估提出的控制策略的有效性,并将其与更综合的控制技术进行比较。

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